Example #1
0
 def test_t_gate_nondeterministic_default_basis_gates(self):
     """Test t-gate circuits compiling to backend default basis_gates."""
     circuits = ref_non_clifford.t_gate_circuits_nondeterministic(final_measure=False)
     targets = ref_non_clifford.t_gate_statevector_nondeterministic()
     job = execute(circuits, StatevectorSimulator(), shots=1)
     result = job.result()
     self.assertTrue(getattr(result, 'success', False))
     self.compare_statevector(result, circuits, targets)
 def test_t_gate_nondeterministic_minimal_basis_gates(self):
     """Test t-gate gate circuits compiling to u3,cx"""
     circuits = ref_non_clifford.t_gate_circuits_nondeterministic(final_measure=False)
     targets = ref_non_clifford.t_gate_unitary_nondeterministic()
     job = execute(circuits, UnitarySimulator(), shots=1, basis_gates=['u3', 'cx'])
     result = job.result()
     self.assertTrue(getattr(result, 'success', False))
     self.compare_unitary(result, circuits, targets)
 def test_t_gate_nondeterministic_default_basis_gates(self):
     """Test t-gate circuits compiling to backend default basis_gates."""
     circuits = ref_non_clifford.t_gate_circuits_nondeterministic(final_measure=False)
     targets = ref_non_clifford.t_gate_unitary_nondeterministic()
     job = execute(circuits, UnitarySimulator(), shots=1)
     result = job.result()
     self.is_completed(result)
     self.compare_unitary(result, circuits, targets)
 def test_t_gate_nondeterministic_waltz_basis_gates(self):
     """Test t-gate gate circuits compiling to u1,u2,u3,cx"""
     circuits = ref_non_clifford.t_gate_circuits_nondeterministic(final_measure=False)
     targets = ref_non_clifford.t_gate_unitary_nondeterministic()
     job = execute(circuits, UnitarySimulator(), shots=1, basis_gates=['u1', 'u2', 'u3', 'cx'])
     result = job.result()
     self.is_completed(result)
     self.compare_unitary(result, circuits, targets)
Example #5
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 def test_t_gate_nondeterministic_minimal_basis_gates(self):
     """Test t-gate gate circuits compiling to u3,cx"""
     circuits = ref_non_clifford.t_gate_circuits_nondeterministic(final_measure=False)
     targets = ref_non_clifford.t_gate_statevector_nondeterministic()
     job = execute(circuits, StatevectorSimulator(), shots=1, basis_gates=['u3', 'cx'])
     result = job.result()
     self.is_completed(result)
     self.compare_statevector(result, circuits, targets)
Example #6
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 def test_t_gate_nondeterministic_default_basis_gates(self):
     """Test t-gate circuits compiling to backend default basis_gates."""
     circuits = ref_non_clifford.t_gate_circuits_nondeterministic(
         final_measure=False)
     targets = ref_non_clifford.t_gate_unitary_nondeterministic()
     job = execute(circuits, self.SIMULATOR, shots=1, **self.BACKEND_OPTS)
     result = job.result()
     self.assertSuccess(result)
     self.compare_unitary(result, circuits, targets)
 def test_t_gate_nondeterministic_default_basis_gates(self):
     """Test t-gate circuits compiling to backend default basis_gates."""
     shots = 2000
     circuits = ref_non_clifford.t_gate_circuits_nondeterministic(
         final_measure=True)
     targets = ref_non_clifford.t_gate_counts_nondeterministic(shots)
     job = execute(circuits, self.SIMULATOR, shots=shots)
     result = job.result()
     self.is_completed(result)
     self.compare_counts(result, circuits, targets, delta=0.05 * shots)
 def test_t_gate_nondeterministic_waltz_basis_gates(self):
     """Test t-gate gate circuits compiling to u1,u2,u3,cx"""
     shots = 2000
     circuits = ref_non_clifford.t_gate_circuits_nondeterministic(
         final_measure=True)
     targets = ref_non_clifford.t_gate_counts_nondeterministic(shots)
     job = execute(circuits,
                   self.SIMULATOR,
                   shots=shots,
                   basis_gates=['u1', 'u2', 'u3', 'cx'])
     result = job.result()
     self.is_completed(result)
     self.compare_counts(result, circuits, targets, delta=0.05 * shots)
Example #9
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 def test_t_gate_nondeterministic_default_basis_gates(self):
     """Test t-gate circuits compiling to backend default basis_gates."""
     shots = 500
     circuits = ref_non_clifford.t_gate_circuits_nondeterministic(
         final_measure=True)
     qobj = assemble(circuits, QasmSimulator(), shots=shots)
     targets = ref_non_clifford.t_gate_counts_nondeterministic(shots)
     opts = self.BACKEND_OPTS.copy()
     opts["extended_stabilizer_metropolis_mixing_time"] = 50
     job = QasmSimulator().run(qobj, **opts)
     result = job.result()
     self.assertSuccess(result)
     self.compare_counts(result, circuits, targets, delta=0.1 * shots)
 def test_t_gate_nondeterministic_default_basis_gates(self, method, device):
     """Test t-gate circuits compiling to backend default basis_gates."""
     backend = self.backend(method=method,
                            device=device,
                            extended_stabilizer_metropolis_mixing_time=50)
     shots = 500
     circuits = ref_non_clifford.t_gate_circuits_nondeterministic(
         final_measure=True)
     circuits = transpile(circuits, backend, optimization_level=0)
     result = backend.run(circuits, shots=shots).result()
     targets = ref_non_clifford.t_gate_counts_nondeterministic(shots)
     self.assertSuccess(result)
     self.compare_counts(result, circuits, targets, delta=0.1 * shots)
Example #11
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 def test_t_gate_nondeterministic_minimal_basis_gates(self):
     """Test t-gate gate circuits compiling to u3,cx"""
     shots = 4000
     circuits = ref_non_clifford.t_gate_circuits_nondeterministic(
         final_measure=True)
     targets = ref_non_clifford.t_gate_counts_nondeterministic(shots)
     job = execute(circuits,
                   self.SIMULATOR,
                   shots=shots,
                   basis_gates=['u3', 'cx'])
     result = job.result()
     self.assertTrue(getattr(result, 'success', False))
     self.compare_counts(result, circuits, targets, delta=0.05 * shots)
Example #12
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 def test_t_gate_nondeterministic_waltz_basis_gates(self):
     """Test t-gate gate circuits compiling to u1,u2,u3,cx"""
     circuits = ref_non_clifford.t_gate_circuits_nondeterministic(
         final_measure=False)
     targets = ref_non_clifford.t_gate_unitary_nondeterministic()
     job = execute(circuits,
                   self.SIMULATOR,
                   shots=1,
                   basis_gates=['u1', 'u2', 'u3', 'cx'],
                   **self.BACKEND_OPTS)
     result = job.result()
     self.assertSuccess(result)
     self.compare_unitary(result, circuits, targets)
 def test_t_gate_nondeterministic_default_basis_gates(self):
     """Test t-gate circuits compiling to backend default basis_gates."""
     shots = 2000
     circuits = ref_non_clifford.t_gate_circuits_nondeterministic(final_measure=True)
     qobj = qiskit_compile(circuits, QasmSimulator(), shots=shots)
     targets = ref_non_clifford.t_gate_counts_nondeterministic(shots)
     job = QasmSimulator().run(qobj,
                               backend_options={
                                   "method": "extended_stabilizer",
                                   'extended_stabilizer_mixing_time': 50
                               })
     result = job.result()
     self.is_completed(result)
     self.compare_counts(result, circuits, targets, delta=0.05 * shots)
 def test_t_gate_nondeterministic_minimal_basis_gates(self):
     """Test t-gate gate circuits compiling to u3,cx"""
     shots = 4000
     circuits = ref_non_clifford.t_gate_circuits_nondeterministic(
         final_measure=True)
     targets = ref_non_clifford.t_gate_counts_nondeterministic(shots)
     job = execute(circuits,
                   self.SIMULATOR,
                   shots=shots,
                   basis_gates=['u3', 'cx'],
                   backend_options=self.BACKEND_OPTS)
     result = job.result()
     self.assertSuccess(result)
     self.compare_counts(result, circuits, targets, delta=0.05 * shots)